• 제목/요약/키워드: Friction Element

검색결과 831건 처리시간 0.023초

Al 6061합금의 마찰교반접합시 접합부의 열거동에 관한 연구 (A Study on the Thermal Behavior of Friction Stir Welding in hi 6061 Alloys)

  • 방한서;김흥주;고민성;김규훈
    • Journal of Welding and Joining
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    • 제20권4호
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    • pp.534-537
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    • 2002
  • In the various industry such as shipbuilding and automobile, etc., Al-alloys are used to reduce weight and improve economical efficiency, and they are mainly utilized in the process of Friction Stir Welding (FSW). A number of studies have been carried out on the metallurgical characteristics of friction stir welding In Al-alloys. However, research on the thermal behavior of FSW by using numerical analysis is not sufficient in the domestic and abroad. In this paper, therefore, numerical simulation was used to find out thermal behaviour of FSW by finite element method. We considered heat source that occurred by friction between tool shoulder including pin and base metal. To confirm the result of simulation, macrostructure is examined and compared after welding. The result of numerical simulation shows that Al-alloy is welded under a melting point of Al around pin by FSW.

Nonlinear FEA of higher order beam resting on a tensionless foundation with friction

  • He, Guanghui;Li, Xiaowei;Lou, Rong
    • Geomechanics and Engineering
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    • 제11권1호
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    • pp.95-116
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    • 2016
  • A novel higher order shear-deformable beam model, which provides linear variation of transversal normal strain and quadratic variation of shearing strain, is proposed to describe the beam resting on foundation. Then, the traditional two-parameter Pasternak foundation model is modified to capture the effects of the axial deformation of beam. The Masing's friction law is incorporated to deal with nonlinear interaction between the foundation and the beam bottom, and the nonlinear properties of the beam material are also considered. To solve the mathematical problem, a displacement-based finite element is formulated, and the reliability of the proposed model is verified. Finally, numerical examples are presented to study the effects of the interfacial friction between the beam and foundation, and the mechanical behavior due to the tensionless characteristics of the foundation is also examined. Numerical results indicate that the effects of tensionless characteristics of foundation and the interfacial friction have significant influences on the mechanical behavior of the beam-foundation system.

유한요소법을 이용한 미끄럼 접촉시의 반무한체 내의 수평균열 전파해석 (Finite Element Analysis of Subsurface Crack Propagation in Half-space Due to Sliding Contact)

  • 이상윤;김석삼
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 1999년도 제29회 춘계학술대회
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    • pp.297-302
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    • 1999
  • Finite element analysis is peformed about the crack propagation in half-space due to sliding contact. The analysis is based on linear elastic fracture mechanics and stress intensity factor concept. The crack location is fixed and the friction coefficient between asperity and half-space is varied to analyze the effect of surface friction on stress Intensity factor for horizontal crack. The crack propagation direction is predicted based on the maximum range of shear and tensile stress intensity factor.

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접촉문제에서의 변분부등식의 유한요소해석과 A Priori 오차계산법 (A Solution of Variational Inequalities and A Priori Error Estimations in Contact Problems with Finite Element Method)

  • 이춘열
    • 대한기계학회논문집A
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    • 제20권9호
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    • pp.2887-2893
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    • 1996
  • Governing equations infrictional contact problems are introduced using variational inequality formulations which are regularized to overcome the diffculties of non-differentiability of the friction functional. Also finite element approximations and a priori error estimations are derived based on those formulations. Numerical simulations are performed illustrating the theoretical results.

Development of a double-sliding friction damper (DSFD)

  • Shen, Shaodong;Pan, Peng;Sun, Jiangbo;Gong, Runhua;Wang, Haishen;Li, Wei
    • Smart Structures and Systems
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    • 제20권2호
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    • pp.151-162
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    • 2017
  • In practical engineering, the friction damper is a widely used energy dissipation device because of its large deformation capacity, stable energy dissipation capability, and cost effectiveness. While based on conventional friction dampers, the double-sliding friction damper (DSFD) being proposed is different in that it features two sliding friction forces, i.e., small and large sliding friction forces, rather than a single-sliding friction force of ordinary friction dampers. The DSFD starts to deform when the force sustained exceeds the small-sliding friction force, and stops deforming when the deformation reaches a certain value. If the force sustained exceeds the large sliding friction force, it continues to deform. Such a double-sliding behavior is expected to endow structures equipped with the DSFD better performance in both small and large earthquakes. The configuration and working mechanism of the DSFD is described and analyzed. Quasi-static loading tests and finite element analyses were conducted to investigate its hysteretic behavior. Finally, time history analysis of the single-degree-of-freedom (SDOF) and multi-degree-of-freedom (MDOF) systems were performed to investigate the seismic performance of DSFD-equipped structures. For the purpose of comparison, tests on systems equipped with conventional friction dampers were also performed. The proposed DSFD can be realized perfectly, and the DSFD-equipped structures provide better performances than those equipped with conventional friction dampers in terms of interstory drift and floor acceleration. In particular, for the MDOF system, the DSFD helps the structural system to have a uniform distributed interstory drift.

수직력의 변화를 고려한 마찰댐퍼의 거동 분석 (Performance Analysis of Friction Damper Considering the Change of the Vertical Force)

  • 조성국;박웅기;이성태
    • 한국구조물진단유지관리공학회 논문집
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    • 제21권1호
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    • pp.59-66
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    • 2017
  • 이 논문에서는 원자력발전소나 각종 플랜트 시설물에서 배관을 보호하기 위하여 마찰방식을 이용한 댐퍼를 개발하여 성능을 분석하는 연구를 수행하였다. 마찰방식댐퍼는 MER-Spring에 압축력을 가하여 베어링과 샤프트에 마찰력을 발생시켜 진동을 감쇠시키는 장치이다. 댐퍼의 성능을 분석하기 위하여 MER-Spring과 마찰재의 재료특성을 분석하고, 마찰의 영향에 대한 연구를 수행하였으며, 이에 대한 거동 방정식을 수립하였다. 또한 재료의 변형 여부를 판단 및 수립된 거동방정식의 신뢰성 검토를 위하여 시작품을 제작하였고 시편으로 제작된 댐퍼의 성능 시험과 유한요소 해석을 통하여 이를 분석하였다. 그 결과, 재료의 신뢰성이 확인되었고 마찰계수는 속도에 따른 보정이 필요하며, 반복재하 실험 및 유한요소해석 결과 우수한 결과를 나타냄을 확인하였다. 또한, 추후에 동적하중에 대한 검토가 수행되어 이 연구의 성과가 더 넓은 범위에 적용되었으면 한다.

Effect of archwire stiffness and friction on maxillary posterior segment displacement during anterior segment retraction: A three-dimensional finite element analysis

  • Park, Choon-Soo;Yu, Hyung-Seog;Cha, Jung-Yul;Mo, Sung-Seo;Lee, Kee-Joon
    • 대한치과교정학회지
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    • 제49권6호
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    • pp.393-403
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    • 2019
  • Objective: Sliding mechanics using orthodontic miniscrews is widely used to stabilize the anchorage during extraction space closure. However, previous studies have reported that both posterior segment displacement and anterior segment displacement are possible, depending on the mechanical properties of the archwire. The present study aimed to investigate the effect of archwire stiffness and friction change on the displacement pattern of the maxillary posterior segment during anterior segment retraction with orthodontic miniscrews in sliding mechanics. Methods: A three-dimensional finite element model was constructed. The retraction point was set at the archwire level between the lateral incisor and canine, and the orthodontic miniscrew was located at a height of 8 mm from the archwire between the second premolar and first molar. Archwire stiffness was simulated with rectangular stainless steel wires and a rigid body was used as a control. Various friction levels were set for the surface contact model. Displacement patterns for the posterior and anterior segments were compared between the conditions. Results: Both the anterior and posterior segments exhibited backward rotation, regardless of archwire stiffness or friction. Among the conditions tested in this study, the least undesirable rotation was found with low archwire stiffness and low friction. Conclusions: Posterior segment displacement may be unavoidable but reducing the stiffness and friction of the main archwire may minimize unwanted rotations during extraction space closure.

마찰 곡선을 고려한 Pin-on-disk 마찰소음 해석 및 검증 (Investigation of Friction Noise with Respect to Friction Curve by Using FEM and Its Validation)

  • 남재현;강재영
    • 한국소음진동공학회논문집
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    • 제24권1호
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    • pp.28-34
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    • 2014
  • This study provides the numerical finite-element method(FEM) estimating the friction noise induced by the negative slope in the friction-velocity curve. The friction noise due to the friction-velocity curve is experimentally investigated through the pin-on-disk setup. The measured squeal frequency is estimated by FEM. The friction curve is measured by the friction test, then it is applied to the complex eigenvalue analysis. The results shows that the experimental squeal frequency can be determined by the FEM analysis. Also, it is emphasized that the negative friction-velocity slope is essential in generating friction noise in the pin-on-disc system.

포물선형상의 성형성에 관한 유한요소해석 (Finite Element Analysis on Formability of Parabolic Shape)

  • 정상원;이경원
    • 한국생산제조학회지
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    • 제21권4호
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    • pp.677-682
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    • 2012
  • For the product with small diameter, long column, and parabolic shape, the forging formability of the high-carbon steel wire rod was investigated in this study. By using the three-dimensional finite element method, the formability of wire was reviewed by forming analysis for the desired parabolic shape of local part. Analysis results due to forging direction, forging velocity, friction coefficient and constraint location were also investigated. On the basis of these results, it is noted that the forging direction has the big influence when the product with long column is forged. As the forging velocity increases, buckling tends to be limited and formability of parabolic shape is improved. By constraining the lower parabolic shape part to suppress plastic strain, the effect depending on friction coefficient is not almost appeared. And good parabolic shape is obtained at the region of the forging velocity of more than 0.5 m/s.

접촉 압력에 의한 마찰 특성 변화가 U 드로우 굽힘에서의 스프링백에 미치는 영향 (Influence of Frictional Behavior Depending on Contact Pressure on Springback at U Draw Bending)

  • 한수식
    • 소성∙가공
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    • 제20권5호
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    • pp.344-349
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    • 2011
  • Variation of contact pressure causes change of friction coefficient, which in turn changes stress distribution in the sheet being formed and final springback. In the present study, U-draw bending experiments were carried out under constant blank holding force(BHF) and different blank sizes, and finite element analysis was conducted with and without considering contact pressure effect on friction. When the BHF was sufficiently high, the degree of springback was different between constant blank holding pressure condition and that with varying blank holding pressure. Finite element analysis considering the influence of contact pressure effect on friction could explain the occurrence of springback.